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首页> 外文期刊>Nonlinear Processes in Geophysics Discussions >Double rank-ordering technique of ROMA (Rank-Ordered Multifractal Analysis) for multifractal fluctuations featuring multiple regimes of scales
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Double rank-ordering technique of ROMA (Rank-Ordered Multifractal Analysis) for multifractal fluctuations featuring multiple regimes of scales

机译:用于多重缩放制度的多重速度波动的罗姆(秩序排序多重分析)的双级排序技术

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Rank-Ordered Multifractal Analysis (ROMA), a technique capable of deciphering the multifractal characteristics of intermittent fluctuations, was originally applied to the results of a magnetohydrodynamic (MHD) simulation. Application of ROMA to measured fluctuations in the auroral zone, due to the dominant physical effects changing from kinetic to MHD as the scale increases, requires an additional level of rank-ordering in order to divide the domain of scales into regimes. An algorithm for the additional step in this double rank-ordering technique is discussed, and is demonstrated in the application to the electric field fluctuations in the auroral zone as an example. As a result of the double rank-ordering, ROMA is able to take into account the nonlinear crossover behavior characterized by the multiple regimes of time scales by providing a scaling variable and a scaling function that are global to all the time scales.
机译:秩序订购的多法分析(ROMA),一种能够解密间歇波动的多分切型特性的技术,最初应用于磁流动动力学(MHD)模拟的结果。 ROMA在极光区中测量的施用,由于随着尺度增加,由于从动力学变为MHD的主导物理效应,需要额外的等级排序,以将尺度的域分为制度。讨论了该双级排序技术中的附加步骤的算法,并在应用于极光区的电场波动的应用中。由于双级排序,ROMA能够考虑通过提供缩放变量和全局的缩放功能来表达由时间尺度的多个方块的非线性交叉行为,以及全局到所有时间尺度。

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